The allometry of vertebrate pursuit predation

Open Access
Authors
Publication date 05-05-2026
Journal Proceedings of the National Academy of Sciences
Article number e2534397123
Volume | Issue number 123 | 18
Number of pages 8
Organisations
  • Faculty of Science (FNWI) - Institute for Biodiversity and Ecosystem Dynamics (IBED)
Abstract

Pursuit and evasion dynamics are a general phenomenon observed in predator–prey interactions across terrestrial, aquatic, and aerial domains. Differences in body mass and domain generate variation in biomechanical traits that shape these encounters, yet the consequences of such variation remain poorly understood. Here, we integrate allometric scaling relationships of vertebrate locomotion with turning gambit theory, a geometrical model of pursuit–evasion, to examine how body size and domain shape predator–prey encounter outcomes. We show that in its original form, the turning gambit predicts that prey should rarely be able to outmaneuver predators, particularly in aerial and aquatic systems, contradicting the low capture success observed in nature. This mismatch is resolved by recognizing that predators cannot respond instantaneously to prey maneuvers. Such sensory–motor delays, although brief, shift the advantage to prey across all domains. Finally, we show that these delays, together with domain-specific scaling of speed and maneuverability, generate distinct biomechanical regimes in which different traits govern pursuit–evasion outcomes.

Document type Article
Note With supporting material.
Language English
Published at
https://doi.org/10.1073/pnas.2534397123 (Final published version)
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